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MAX17215X+T
IC BATT MFUNC 2-3CELL 15WLP
- 製造商
- 製造商。 部分 #MAX17215X+T
- 包 15-WFBGA, WLBGA
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- 有現貨的3448
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規格
| Package | Tape & Reel (TR) |
| Series | ModelGauge™ |
| ProductStatus | Active |
| Function | Multi-Function Controller |
| NumberofCells | 2 ~ 3 |
| Interface | 1-Wire |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 15-WFBGA, WLBGA |
概述
Description
The MAX17215X+T is a fuel gauge integrated circuit (IC) from Maxim Integrated, part of the company's portfolio of battery management solutions. It is designed to accurately measure and report the state of charge (SoC) and state of health (SoH) of lithium-ion (Li-ion) and lithium-polymer (LiPo) batteries. The IC offers precise battery monitoring through features like the ModelGauge m5 EZ algorithm, which eliminates the need for traditional battery characterization. This results in accurate gauging without requiring full discharge cycles.
The device is compact, making it suitable for space-constrained applications such as portable electronics, wearables, and IoT devices. Key features include low power consumption, ensuring minimal impact on battery life, and a tiny form factor that aids in easy integration into small devices.
Additionally, the MAX17215X+T provides robust protection mechanisms, including overvoltage, undervoltage, and overcurrent protection, ensuring the battery operates within safe limits. It communicates via an I²C interface, allowing easy integration and monitoring within systems. Overall, it optimizes battery performance, extends battery life, and enhances user experience by delivering reliable and accurate battery status information.
The device is compact, making it suitable for space-constrained applications such as portable electronics, wearables, and IoT devices. Key features include low power consumption, ensuring minimal impact on battery life, and a tiny form factor that aids in easy integration into small devices.
Additionally, the MAX17215X+T provides robust protection mechanisms, including overvoltage, undervoltage, and overcurrent protection, ensuring the battery operates within safe limits. It communicates via an I²C interface, allowing easy integration and monitoring within systems. Overall, it optimizes battery performance, extends battery life, and enhances user experience by delivering reliable and accurate battery status information.
Features
The MAX17215X+T is a low-power, high-accuracy fuel gauge IC designed for battery-powered applications. Key features include:
1. ModelGauge m5 EZ Algorithm: Provides high accuracy in battery state-of-charge (SOC) estimation, offering better performance over traditional coulomb counters. It requires no battery characterization and works with a wide range of lithium-ion and lithium-polymer batteries.
2. Extended Battery Life: The algorithm helps in predicting time-to-empty and time-to-full, enhancing the user experience by accurately predicting battery life.
3. Low Quiescent Current: Optimized for minimal power consumption, it offers extended battery run time even in low-power applications.
4. Voltage and Current Measurement: It provides precise measurements of battery voltage and current, contributing to accurate SOC calculations.
5. Battery Safety Features: Includes protection against overcharge, overdischarge, and thermal conditions, ensuring battery safety and longevity.
6. Communication Interface: Supports I2C communication for easy integration with host systems.
7. Small Form Factor: Available in a compact package, making it suitable for space-constrained applications.
These features make the MAX17215X+T ideal for consumer electronics, portable medical devices, and other applications requiring reliable battery monitoring and management.
1. ModelGauge m5 EZ Algorithm: Provides high accuracy in battery state-of-charge (SOC) estimation, offering better performance over traditional coulomb counters. It requires no battery characterization and works with a wide range of lithium-ion and lithium-polymer batteries.
2. Extended Battery Life: The algorithm helps in predicting time-to-empty and time-to-full, enhancing the user experience by accurately predicting battery life.
3. Low Quiescent Current: Optimized for minimal power consumption, it offers extended battery run time even in low-power applications.
4. Voltage and Current Measurement: It provides precise measurements of battery voltage and current, contributing to accurate SOC calculations.
5. Battery Safety Features: Includes protection against overcharge, overdischarge, and thermal conditions, ensuring battery safety and longevity.
6. Communication Interface: Supports I2C communication for easy integration with host systems.
7. Small Form Factor: Available in a compact package, making it suitable for space-constrained applications.
These features make the MAX17215X+T ideal for consumer electronics, portable medical devices, and other applications requiring reliable battery monitoring and management.
Package
The MAX17215X+T is a battery fuel gauge IC from Maxim Integrated. It is typically offered in a compact, lead-free 9-bump wafer-level package (WLP), designed for integration in portable devices where space is limited.
Pinout
The MAX17215X+T is a fuel gauge IC designed for monitoring lithium-ion (Li-ion) batteries. It is part of the ModelGauge m5 EZ family from Maxim Integrated. The IC is typically offered in a compact package, often with an 8-pin configuration.
Key functions of the MAX17215X+T include:
1. Fuel Gauging: Provides accurate state-of-charge (SOC) readings, helping to estimate the remaining battery life.
2. Battery Health Monitoring: Tracks battery wear and provides data on battery health.
3. Alert System: Can generate alerts for various battery conditions, such as low SOC.
4. Temperature Monitoring: Includes temperature measurement to enhance the accuracy of SOC calculations.
5. Power Management: Aids in efficient power usage and management within battery-powered applications.
For detailed specifications and pin configuration, it's recommended to consult the official datasheet from Maxim Integrated, as these documents provide in-depth technical information and application guidance.
Key functions of the MAX17215X+T include:
1. Fuel Gauging: Provides accurate state-of-charge (SOC) readings, helping to estimate the remaining battery life.
2. Battery Health Monitoring: Tracks battery wear and provides data on battery health.
3. Alert System: Can generate alerts for various battery conditions, such as low SOC.
4. Temperature Monitoring: Includes temperature measurement to enhance the accuracy of SOC calculations.
5. Power Management: Aids in efficient power usage and management within battery-powered applications.
For detailed specifications and pin configuration, it's recommended to consult the official datasheet from Maxim Integrated, as these documents provide in-depth technical information and application guidance.
Manufacturer
The MAX17215X+T is manufactured by Maxim Integrated. Maxim Integrated is a company that designs, manufactures, and sells analog and mixed-signal integrated circuits for a wide range of industries. They provide products for applications in consumer electronics, automotive, communications, industrial systems, and data center markets, among others. The company focuses on creating integrated solutions that enhance energy efficiency, performance, and reliability in electronic devices. In 2021, Maxim Integrated was acquired by Analog Devices, Inc., a prominent global leader in the design and manufacturing of semiconductor products.
Application
The MAX17215X+T is a fuel gauge IC used primarily in battery management systems. Its application areas include portable electronics, wearables, medical devices, and IoT devices. It provides accurate battery state-of-charge (SOC) and state-of-health (SOH) measurements, enabling efficient power management and extended battery life.
Equivalent
The MAX17215X+T is a fuel gauge IC for lithium-ion and lithium-polymer batteries. Equivalent products include the Texas Instruments BQ27542-G1 and the STMicroelectronics STC3115. These alternatives offer similar battery management features and are typically used in portable electronic devices to monitor battery status and performance. When selecting an equivalent, ensure compatibility with your specific application requirements such as voltage range, interface, and package type.
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